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From the CoverPNAS Plus: Noncatalytic chalcone isomerase-fold proteins in Humulus lupulus are auxiliary components in prenylated flavonoid biosynthesis

机译:来自CoverPNAS Plus:Hum草中的非催化查尔酮异构酶折叠蛋白是异戊烯基黄酮生物合成中的辅助成分

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摘要

Xanthohumol (XN) and demethylxanthohumol (DMX) are specialized prenylated chalconoids with multiple pharmaceutical applications that accumulate to high levels in the glandular trichomes of hops (Humulus lupulus L.). Although all structural enzymes in the XN pathway have been functionally identified, biochemical mechanisms underlying highly efficient production of XN have not been fully resolved. In this study, we characterized two noncatalytic chalcone isomerase (CHI)-like proteins (designated as HlCHIL1 and HlCHIL2) using engineered yeast harboring all genes required for DMX production. HlCHIL2 increased DMX production by 2.3-fold, whereas HlCHIL1 significantly decreased DMX production by 30%. We show that CHIL2 is part of an active DMX biosynthetic metabolon in hop glandular trichomes that encompasses a chalcone synthase (CHS) and a membrane-bound prenyltransferase, and that type IV CHI-fold proteins of representative land plants contain conserved function to bind with CHS and enhance its activity. Binding assays and structural docking uncover a function of HlCHIL1 to bind DMX and naringenin chalcone to stabilize the ring-open configuration of these chalconoids. This study reveals the role of two HlCHILs in DMX biosynthesis in hops, and provides insight into their evolutionary development from the ancestral fatty acid-binding CHI-fold proteins to specialized auxiliary proteins supporting flavonoid biosynthesis in plants.
机译:Xanthohumol(XN)和Demethylxanthohumol(DMX)是特殊的异戊二烯类胆甾醇,具有多种药物应用,在啤酒花的腺毛中积累高水平。尽管已在功能上鉴定了XN途径中的所有结构酶,但尚未完全解决高效生产XN的生化机制。在这项研究中,我们使用包含DMX生产所需的所有基因的工程酵母来表征了两种非催化查耳酮异构酶(CHI)样蛋白(分别称为HlCHIL1和HlCHIL2)。 HlCHIL2将DMX产量提高了2.3倍,而HlCHIL1则将DMX产量大大降低了30%。我们显示CHIL2是啤酒花腺毛中活跃的DMX生物合成代谢产物的一部分,其包含查尔酮合酶(CHS)和膜结合异戊二烯基转移酶,并且代表陆地植物的IV型CHI折叠蛋白包含与CHS结合的保守功能并增强其活动性。结合测定和结构对接揭示了HlCHIL1与DMX和柚皮素查尔酮结合的功能,以稳定这些查耳酮类化合物的开环构型。这项研究揭示了两种HlCHIL在啤酒花DMX生物合成中的作用,并提供了它们从祖先脂肪酸结合CHI折叠蛋白到支持植物中类黄酮生物合成的专门辅助蛋白的进化发展的见识。

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